A glass cutting device for touch screen processing
By designing an automated glass cutting device, the problems of glass shavings and burr residue in touch screen glass cutting were solved, realizing automated glass cutting and burr removal, reducing production costs and minimizing the environmental risks of chemical cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-24
- Publication Date
- 2026-04-03
AI Technical Summary
Existing technologies for cutting touch screen glass present problems such as glass shavings, burr residue, high production costs, and environmental issues. Furthermore, the glass needs to be separated and cleaned after cutting, which increases the process and the risk of chemical pollution.
A glass cutting device for touch screen processing was designed, comprising a gripping and separating mechanism, a cutting component, a splitting component, and a processing component. Through steps such as vacuum adsorption, cutting, splitting, grinding, and spraying with fire and water, the device achieves automated glass cutting, separation, and burr removal. A PLC controller is integrated for coordinated operation.
It enables automated glass cutting and deburring, reduces manual separation and cleaning steps, lowers production costs, and avoids the use of chemical cleaning agents and environmental pollution.
Smart Images

Figure CN117245796B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of touch screen processing technology, and in particular to a glass cutting device for touch screen processing. Background Technology
[0002] A touch screen, also known as a touch panel or touch screen display, is a sensor-type liquid crystal display device that can receive input signals from touch or other sources.
[0003] The surface of a touch screen is usually covered with glass. During the manufacturing process of touch screen glass, large sheets of touch screen glass often need to be divided into multiple smaller sheets.
[0004] Currently, the method for dividing large sheets of touchscreen glass into multiple smaller sheets is to use a glass cutting machine. However, traditional glass cutting machines require manual separation of the glass after cutting. Furthermore, traditional glass cutting machines easily generate glass shavings during the cutting process, and burrs remain on the edges of the glass. The generated glass shavings easily adhere to the surface of the glass substrate, affecting surface cleanliness. Moreover, when multiple pieces of glass are stacked together, the glass shavings can scratch the glass substrate and film. Therefore, the cut touchscreen glass needs to be stored in special containers with layers spaced apart, increasing production costs. In addition, the cut touchscreen glass needs to be cleaned, which requires a large amount of chemical cleaning agents. This not only increases production steps and costs but also causes pollution, which is detrimental to the environment. Summary of the Invention
[0005] (a) Technical problems to be solved
[0006] To address the aforementioned problems in the prior art, the present invention provides a glass cutting device for touch screen processing, which can better cut glass, facilitate the separation of cut glass, and treat burrs on the glass edges and collect glass shards to prevent glass shards from scratching the glass and reduce glass processing costs.
[0007] (II) Technical Solution
[0008] To achieve the above objectives, the main technical solutions adopted by the present invention include:
[0009] A glass cutting device for touch screen processing includes a machine base, a gripping and separating mechanism, a moving mechanism, a cutting component, a splitting component, and a processing component. At least one of the gripping and separating mechanisms is provided on the upper surface of the machine base. The lower part of the moving mechanism is connected to the machine base. The cutting component, the splitting component, and the processing component are all mounted on the upper part of the moving mechanism.
[0010] The processing component includes a first movable box, a first lifting component, a collection box, a grinding component, and an exhaust component. One side of the first movable box is connected to the moving mechanism, and the other side of the first movable box is provided with the first lifting component. The first lifting component is linearly driven connected to the collection box. The grinding component is provided at the lower part of the collection box, and an exhaust port is provided at the upper part of the collection box. The exhaust component is connected to the exhaust port.
[0011] Furthermore, the polishing assembly includes a polishing drive, a rotating tube, a polishing component, and a transmission belt. A rotating tube is rotatably connected to each of the two sides of the lower part of the collection box. The rotating tube communicates with the interior of the collection box. The upper part of one rotating tube is connected to the upper part of the other rotating tube via the transmission belt. The polishing drive is driven by the transmission belt. A polishing component is fixedly connected to the lower part of each rotating tube. The polishing component has an internal cavity, which communicates with the collection box via the rotating tube. A "V"-shaped polishing groove is provided in the middle of the polishing component. A polishing layer is provided on the outer surface of the polishing groove. Several collection holes are provided inside the polishing groove, and the collection holes communicate with the cavity.
[0012] Furthermore, the cutting assembly includes a second movable box, a second lifting assembly, a fixed plate, and a cutting head. One side of the second movable box is connected to the moving mechanism, and the other side of the second movable box is provided with the second lifting assembly. The second lifting assembly is linearly driven connected to the fixed plate, and the cutting head is detachably connected to the lower part of the fixed plate.
[0013] Furthermore, the splitting assembly includes a third moving box, a third lifting assembly, a fire-spraying assembly, and a water-spraying assembly. One side of the third moving box is connected to the moving mechanism, and the other side of the third moving box is provided with the third lifting assembly. The fire-spraying assembly and the water-spraying assembly are both mounted on the third lifting assembly.
[0014] Furthermore, the flame-throwing assembly includes an oil tank, an oil pump, an oil nozzle, and an igniter. The oil tank is connected to the third lifting assembly. The oil nozzle is located at the lower part of the oil tank. The oil pump is located inside the oil tank and is connected to the oil nozzle. The igniter is located on the oil nozzle.
[0015] Furthermore, the water spray assembly includes a water tank, a water pump, and a nozzle. The water tank is connected to the third lifting assembly, the nozzle is located at the lower part of the water tank, the water pump is located inside the water tank, and the water pump is connected to the nozzle.
[0016] Furthermore, the gripping and separating mechanism includes a vacuum pump, a main gripping assembly, and a secondary gripping assembly. The main gripping assembly is connected to the machine platform, which is provided with a plurality of sliding grooves. The sliding grooves are arranged around the outside of the main gripping assembly. One secondary gripping assembly is connected to one of the sliding grooves. Both the main gripping assembly and the secondary gripping assembly are connected to the vacuum pump.
[0017] Furthermore, the main gripping component includes a fixed platform, a first support rod, and a first adsorption component. The fixed platform is fixedly connected to the upper surface of the machine platform. A plurality of sliding grooves are arranged around the outer side of the fixed platform. A plurality of the first support rods are fixedly connected to the upper surface of the fixed platform. A first adsorption component is installed on each of the first support rods. All the first adsorption components are connected to the vacuum pump.
[0018] Furthermore, the secondary gripping component includes a first linear drive, a slider, a second support rod, and a second suction member. The first linear drive is installed on one side of the slide groove, and the slider is slidably connected to the other side of the slide groove. The first linear drive is linearly driven to the slider. A plurality of second support rods are fixedly connected to the upper surface of the slider. Each second support rod is equipped with a second suction member, and each second suction member is connected to the vacuum pump.
[0019] Furthermore, the moving mechanism includes a first track, a moving component, a first rotation drive component, a moving platform, and a second track. The first track is detachably connected to both sides of the platform. The lower part of the moving component is slidably connected to a first track. The first rotation drive component is installed inside the moving component. A first toothed groove is provided on the first track. A first gear is driven and connected to each of the first rotation drive components. A first gear meshes with a first track through the first toothed groove. The upper part of each moving component is detachably connected to the lower surface of the moving platform. The second track is detachably connected to the upper surface of the moving platform. The first moving box, the second moving box, and the third moving box are all slidably connected to the second track.
[0020] Furthermore, the first movable box, the second movable box, and the third movable box have the same structure;
[0021] The first movable box includes a box body, a second rotation drive component, and a second gear. One side of the first movable box is slidably connected to the second track. The second rotation drive component is disposed inside the box body and is drivenly connected to the second gear. The second track is provided with a second tooth groove adapted to the second gear, and the second gear meshes with the second tooth groove. The first lifting assembly is installed on the other side of the box body.
[0022] Furthermore, the first lifting assembly, the second lifting assembly, and the third lifting assembly have the same structure;
[0023] The first lifting assembly includes a mounting back plate, a second linear drive, and a slide. One side of the mounting back plate is detachably connected to the other side of the box body, and the other side of the mounting back plate is slidably connected to one side of the slide. The upper part of the second linear drive is detachably connected to the box body, and the lower part of the second linear drive is linearly driven connected to the slide. The other side of the slide is detachably connected to the collection box.
[0024] Furthermore, it also includes a third track, which is detachably connected to the side of the moving platform near the mounting back plate, and the third track is slidably connected to one side of the mounting back plate.
[0025] Furthermore, it also includes a PLC controller, which is electrically connected to the gripping and separating mechanism, the moving mechanism, the cutting component, the splitting component, and the processing component.
[0026] Furthermore, it also includes support legs, which are detachably connected to the lower surface of the machine tool.
[0027] (III) Beneficial Effects
[0028] The beneficial effects of this invention are as follows: In the actual processing of touch screen glass, when it is necessary to cut the touch screen glass, the touch screen glass can be placed on the gripping and separating mechanism, and the gripping and separating mechanism will adsorb and grip the touch screen glass. Then, the moving mechanism will drive the cutting component to move and cut the touch screen glass. Then, the moving mechanism will drive the splitting component to move and split the touch screen glass better. Then, the gripping and separating mechanism will pull the cut and separated touch screen glass to split. Then, the moving mechanism will drive the first moving box to move, and the first lifting component will drive the collecting box and the grinding component to descend. At the same time, the grinding component and the exhaust component will operate. The grinding component will grind the edge of the touch screen glass, and the exhaust component will expel the air in the collecting box, making the inside of the collecting box a negative pressure state. When the grinding component grinds the edge of the glass, the glass shavings will be sucked into the collecting box for collection. This can better cut the glass, facilitate the separation of the cut glass, and can also treat the burrs on the glass edge and collect the glass shavings, avoiding the glass shavings from scratching the glass and reducing the glass processing cost. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the overall structure of the glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0030] Figure 2 This is a schematic diagram of the overall structure of the glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0031] Figure 3 This is a schematic diagram of the overall structure of the glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0032] Figure 4 This is a rear view of the overall structure of a glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0033] Figure 5 This is a side view of the overall structure of a glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0034] Figure 6 This is a top view of the overall structure of the glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0035] Figure 7 This is a schematic diagram of the glass gripping state of a glass cutting device for touch screen processing according to an embodiment of the present invention;
[0036] Figure 8 This is a schematic diagram of the glass separation state of a glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0037] Figure 9 This is a schematic diagram of the grinding component structure in a glass cutting apparatus for touch screen processing according to an embodiment of the present invention;
[0038] [Explanation of Labels in the Attached Image]
[0039] Machine base 1, gripping and separating mechanism 2, moving table 3, second track 4, second moving box 5, third moving box 6, first moving box 7, moving part 8, support leg 9, first track 10, third track 11, first lifting assembly 12, collection box 13, water spray assembly 14, fire spray assembly 15, cutting head 16, second lifting assembly 17, third lifting assembly 18, grinding part 19, exhaust part 20, slide 21, grinding drive part 22, rotating tube 23, grinding clamping groove 24, transmission belt 25, touch screen glass 26, fixed table 201, first suction part 202, first linear drive part 203, slider 204, second suction part 205, second linear drive part 1201, mounting back plate 1202, slide table 1203. Detailed Implementation
[0040] To better explain and facilitate understanding of the present invention, the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0041] Please refer to Figures 1 to 9As shown, a glass cutting device for touch screen processing according to the present invention includes a machine base 1, a gripping and separating mechanism 2, a moving mechanism, a cutting component, a splitting component, and a processing component. At least one of the gripping and separating mechanisms 2 is provided on the upper surface of the machine base 1. The lower part of the moving mechanism is connected to the machine base 1. The cutting component, the splitting component, and the processing component are all installed on the upper part of the moving mechanism.
[0042] The processing assembly includes a first movable box 7, a first lifting assembly 12, a collection box 13, a polishing assembly, and an exhaust component 20. One side of the first movable box 7 is connected to the moving mechanism, and the other side of the first movable box 7 is provided with the first lifting assembly 12. The first lifting assembly 12 is linearly driven connected to the collection box 13. The lower part of the collection box 13 is provided with the polishing assembly, and the upper part of the collection box 13 is provided with an exhaust port. The exhaust component 20 is connected to the exhaust port.
[0043] The working principle of this invention is as follows: In the actual processing of the touch screen glass 26, when it is necessary to cut the touch screen glass 26, the touch screen glass 26 can be placed on the gripping and separating mechanism 2, and the gripping and separating mechanism 2 will adsorb and grip the touch screen glass 26. Then, the moving mechanism will be run to drive the cutting component to move and cut the touch screen glass 26. Then, the moving mechanism will drive the splitting component to move and split the touch screen glass 26 better. Then, the gripping and separating mechanism 2 will be run to pull and split the cut touch screen glass 26. Then, the moving mechanism will drive the first moving box 7 to move and the first lifting component 12 will drive the collecting box 13 and the polishing component to descend. At the same time, the polishing component and the exhaust component 20 will be run. The edge of the touch screen glass 26 will be polished by the polishing component, and the exhaust component 20 will exhaust the air in the collecting box 13, so that the inside of the collecting box 13 is in a negative pressure state. When the polishing component polishes the edge of the glass, it will suck the glass chips off into the collecting box 13 for collection.
[0044] Furthermore, the polishing assembly includes a polishing drive 22, a rotating tube 23, a polishing component 19, and a transmission belt 25. A rotating tube 23 is rotatably connected to each of the two sides of the lower part of the collection box 13. The rotating tube 23 communicates with the interior of the collection box 13. The upper part of one rotating tube 23 is connected to the upper part of another rotating tube 23 via the transmission belt 25. The polishing drive 22 is driven by the transmission belt 25. A polishing component 19 is fixedly connected to the lower part of each rotating tube 23. The polishing component 19 has an internal cavity, which communicates with the collection box 13 via the rotating tube 23. A "V"-shaped polishing groove 24 is provided in the middle of the polishing component 19. A polishing layer is provided on the outer surface of the polishing groove 24. Several collection holes are provided inside the polishing groove 24, and the collection holes communicate with the cavity.
[0045] As can be seen from the above description, when it is necessary to polish the edge of the glass, the polishing drive 22 can be operated, so that the polishing drive 22 drives the rotating tube 23 to rotate through the transmission belt 25, and drives the polishing part 19 to rotate through the rotating tube 23. Then, the "V"-shaped polishing groove 24 on the polishing part 19 approaches the edge of the glass, polishes the glass through the polishing layer, and sucks the glass debris into the collection box 13 through the collection hole.
[0046] Furthermore, the cutting assembly includes a second movable box 5, a second lifting assembly 17, a fixed plate, and a cutting head 16. One side of the second movable box 5 is connected to the moving mechanism, and the other side of the second movable box 5 is provided with the second lifting assembly 17. The second lifting assembly 17 is linearly driven connected to the fixed plate, and the cutting head 16 is detachably connected to the lower part of the fixed plate.
[0047] As can be seen from the above description, the second movable box 5 can drive the second lifting component 17 to move on the moving mechanism. At the same time, the height of the cutting head 16 can be adjusted by the second lifting component 17, and the glass can be cut by the cutting head 16. When cutting is not required, the fixed plate and the cutting head 16 can be raised by the second lifting component 17, so that the cutting head 16 leaves the glass area.
[0048] Furthermore, the splitting assembly includes a third moving box 6, a third lifting assembly 18, a fire-spraying assembly 15, and a water-spraying assembly 14. One side of the third moving box 6 is connected to the moving mechanism, and the other side of the third moving box 6 is provided with the third lifting assembly 18. The fire-spraying assembly 15 and the water-spraying assembly 14 are both mounted on the third lifting assembly 18.
[0049] As can be seen from the above description, it is beneficial for the third moving box 6 to drive the third lifting component 18 to move on the moving mechanism. At the same time, the height of the flame-spraying component 15 and the water-spraying component 14 can be adjusted by the third lifting component 18. When it is necessary to make the cut glass split better, the flame can be sprayed onto the crack of the glass by the flame-spraying component 15, and then water can be sprayed onto the crack of the heated glass by the water-spraying component 14, so that the glass crack is completely cracked by thermal expansion and contraction, which facilitates the subsequent polishing of the glass.
[0050] Furthermore, the flame-throwing assembly 15 includes an oil tank, an oil pump, an oil nozzle, and an igniter. The oil tank is connected to the third lifting assembly 18. The oil nozzle is located at the lower part of the oil tank. The oil pump is located inside the oil tank and is connected to the oil nozzle. The igniter is located on the oil nozzle.
[0051] As can be seen from the above description, when it is necessary to spray flames onto the glass crack, the oil pump can be operated to draw fuel from the fuel tank and spray it out through the fuel injector. At the same time, the fuel is ignited by the igniter, so that the burning flame heats the glass crack.
[0052] Furthermore, the water spray assembly 14 includes a water tank, a water pump, and a nozzle. The water tank is connected to the third lifting assembly 18, the nozzle is provided at the lower part of the water tank, the water pump is located inside the water tank, and the water pump is connected to the nozzle.
[0053] As can be seen from the above description, when it is necessary to spray cooling water on the glass crack, the water pump can be operated so that the water pump can spray the cooling water in the water tank through the nozzle onto the heated glass crack, so that the glass crack can be completely cracked due to thermal expansion and contraction.
[0054] Furthermore, the gripping and separating mechanism 2 includes a vacuum pump, a main gripping assembly, and a secondary gripping assembly. The main gripping assembly is connected to the machine base 1. The machine base 1 is provided with a plurality of sliding grooves 21, which are arranged around the outside of the main gripping assembly. One secondary gripping assembly is connected to one sliding groove 21. Both the main gripping assembly and the secondary gripping assembly are connected to the vacuum pump.
[0055] As can be seen from the above description, when it is necessary to grip the glass, the vacuum pump can be operated to drive the main gripping component and the auxiliary gripping component to operate, and the glass can be gripped by the main gripping component and the auxiliary gripping component.
[0056] Furthermore, the main gripping component includes a fixed platform 201, a first support rod, and a first adsorption element 202. The fixed platform 201 is fixedly connected to the upper surface of the machine base 1. A plurality of sliding grooves 21 are arranged around the outer side of the fixed platform 201. A plurality of first support rods are fixedly connected to the upper surface of the fixed platform 201. A first adsorption element 202 is installed on each first support rod. All first adsorption elements 202 are connected to the vacuum pump.
[0057] As can be seen from the above description, it is beneficial to use a vacuum pump to expel the air inside the first adsorption element 202, so that the first adsorption element 202 can adsorb and grasp the center of the glass.
[0058] Furthermore, the secondary gripping component includes a first linear drive 203, a slider 204, a second support rod, and a second adsorption component 205. The first linear drive 203 is installed on one side of the slide groove 21, and the slider 204 is slidably connected to the other side of the slide groove 21. The first linear drive 203 and the slider 204 are linearly driven connected. A plurality of second support rods are fixedly connected to the upper surface of the slider 204. The second adsorption components 205 are installed on each of the second support rods, and each of the second adsorption components 205 is connected to the vacuum pump.
[0059] As can be seen from the above description, it is beneficial to use a vacuum pump to expel the air from the second adsorption member 205, so that the second adsorption member 205 can grip the edge of the glass. After the glass is cut and split, the first linear drive member 203 can be activated, so that the first linear drive member 203 drives the slider 204 to slide in the slide groove 21, and the slider 204 drives the second support rod and the second adsorption member 205 to move, so that the second adsorption member 205 drives the corresponding split edge glass to move, so that the edge glass reaches the designated position.
[0060] Furthermore, the moving mechanism includes a first track 10, a moving component 8, a first rotation drive component, a moving platform 3, and a second track 4. The two sides of the machine platform 1 are detachably connected to a first track 10. The lower part of the moving component 8 is slidably connected to a first track 10. A first rotation drive component is installed inside the moving component 8. A first toothed groove is provided on the first track 10. A first gear is driven and connected to each of the first rotation drive components. A first gear meshes with a first track 10 through the first toothed groove. The upper part of the moving component 8 is detachably connected to the lower surface of the moving platform 3. The upper surface of the moving platform 3 is detachably connected to the second track 4. The first moving box 7, the second moving box 5, and the third moving box 6 are all slidably connected to the second track 4.
[0061] As can be seen from the above description, when it is necessary to move the cutting component, splitting component and processing component, the first rotation drive can be operated to drive the first gear to rotate, and at the same time the first gear meshes with the first tooth groove, and the moving component 8 moves on the first track 10, while the moving component 8 drives the moving table 3 to move.
[0062] Furthermore, the first movable box 7, the second movable box 5, and the third movable box 6 have the same structure;
[0063] The first movable box 7 includes a box body, a second rotation drive component, and a second gear. One side of the first movable box 7 is slidably connected to the second track 4. The second rotation drive component is disposed inside the box body and is drivenly connected to the second gear. The second track 4 is provided with a second tooth groove adapted to the second gear, and the second gear meshes with the second tooth groove. The first lifting assembly 12 is installed on the other side of the box body.
[0064] As can be seen from the above description, when one of the cutting component, splitting component, and processing component needs to be used, the first moving box 7, the second moving box 5, and the third moving box 6 can be operated to move all three simultaneously. When needed, the corresponding equipment is driven to descend by the first lifting component 12, the second lifting component 17, and the third lifting component 18. When it is necessary to control the movement of the box body, the second rotation drive can be operated to drive the second gear to rotate, so that the second gear meshes with the second tooth groove, and the box body drives the first lifting component 12 to move.
[0065] Furthermore, the first lifting assembly 12, the second lifting assembly 17, and the third lifting assembly 18 have the same structure;
[0066] The first lifting assembly 12 includes a mounting back plate 1202, a second linear drive 1201, and a slide 1203. One side of the mounting back plate 1202 is detachably connected to the other side of the box body, and the other side of the mounting back plate 1202 is slidably connected to one side of the slide 1203. The upper part of the second linear drive 1201 is detachably connected to the box body, and the lower part of the second linear drive 1201 is linearly driven connected to the slide 1203. The other side of the slide 1203 is detachably connected to the collection box 13.
[0067] As can be seen from the above description, when the cutting component, splitting component and processing component are needed, the corresponding equipment can be driven to descend by the first lifting component 12, the second lifting component 17 and the third lifting component 18. When the collection box 13 needs to be driven to descend, the second linear drive 1201 can be operated, so that the second linear drive 1201 drives the slide table 1203 to slide and descend on the mounting back plate 1202.
[0068] Furthermore, it also includes a third track 11, which is detachably connected to the side of the moving platform 3 near the mounting back plate 1202, and the third track 11 is slidably connected to one side of the mounting back plate 1202.
[0069] As can be seen from the above description, it is beneficial for the installation of the back plate 1202 to be more stable when sliding.
[0070] Furthermore, it also includes a PLC controller, which is electrically connected to the gripping and separating mechanism 2, the moving mechanism, the cutting component, the splitting component, and the processing component.
[0071] As can be seen from the above description, it makes it more convenient for users to control the overall device.
[0072] Furthermore, it also includes a support leg 9, which is detachably connected to the lower surface of the machine base 1.
[0073] As can be seen from the above description, it is advantageous to use the support leg 9 to support the entire device.
[0074] Example 1
[0075] Please refer to Figures 1 to 9 A glass cutting device for touch screen processing includes a machine base 1, a gripping and separating mechanism 2, a moving mechanism, a cutting component, a splitting component, and a processing component. At least one of the gripping and separating mechanisms 2 is provided on the upper surface of the machine base 1. The lower part of the moving mechanism is connected to the machine base 1. The cutting component, the splitting component, and the processing component are all installed on the upper part of the moving mechanism.
[0076] The processing assembly includes a first movable box 7, a first lifting assembly 12, a collection box 13, a polishing assembly, and an exhaust component 20. One side of the first movable box 7 is connected to the moving mechanism, and the other side of the first movable box 7 is provided with the first lifting assembly 12. The first lifting assembly 12 is linearly driven connected to the collection box 13. The lower part of the collection box 13 is provided with the polishing assembly, and the upper part of the collection box 13 is provided with an exhaust port. The exhaust component 20 is connected to the exhaust port.
[0077] The exhaust component 20 is an exhaust pump;
[0078] The polishing assembly includes a polishing drive component 22, a rotating tube 23, a polishing component 19, and a transmission belt 25. The lower two sides of the collection box 13 are rotatably connected to a rotating tube 23 via bearings. The rotating tube 23 communicates with the interior of the collection box 13. The upper part of one rotating tube 23 is connected to the upper part of another rotating tube 23 via the transmission belt 25. The polishing drive component 22 is driven by the transmission belt 25. A polishing component 19 is fixedly connected to the lower part of each rotating tube 23. The polishing component 19 has an internal cavity, which communicates with the collection box 13 via the rotating tube 23. A "V"-shaped polishing groove 24 is provided in the middle of the polishing component 19. A polishing layer is provided on the outer surface of the polishing groove 24. Several collection holes are provided inside the polishing groove 24, and the collection holes communicate with the cavity.
[0079] The grinding drive component 22 is a rotary motor;
[0080] The cutting assembly includes a second movable box 5, a second lifting assembly 17, a fixed plate, and a cutting head 16. One side of the second movable box 5 is connected to the moving mechanism, and the other side of the second movable box 5 is provided with the second lifting assembly 17. The second lifting assembly 17 is linearly driven connected to the fixed plate, and the cutting head 16 is detachably connected to the lower part of the fixed plate by bolts.
[0081] The fixing plate is detachably connected to the second lifting assembly 17 by bolts;
[0082] The splitting assembly includes a third movable box 6, a third lifting assembly 18, a fire-spraying assembly 15, and a water-spraying assembly 14. One side of the third movable box 6 is connected to the moving mechanism, and the other side of the third movable box 6 is provided with the third lifting assembly 18. The fire-spraying assembly 15 and the water-spraying assembly 14 are both mounted on the third lifting assembly 18.
[0083] The flame-throwing assembly 15 includes an oil tank, an oil pump, an oil nozzle, and an igniter. The oil tank is connected to the third lifting assembly 18. The oil nozzle is located at the lower part of the oil tank. The oil pump is located inside the oil tank and is connected to the oil nozzle. The igniter is located on the oil nozzle.
[0084] The water spray assembly 14 includes a water tank, a water pump, and a nozzle. The water tank is connected to the third lifting assembly 18. The nozzle is provided at the lower part of the water tank. The water pump is located inside the water tank and is connected to the nozzle.
[0085] The gripping and separating mechanism 2 includes a vacuum pump, a main gripping component, and a secondary gripping component. The main gripping component is connected to the machine base 1. The machine base 1 is provided with a plurality of sliding grooves 21, which are arranged around the outside of the main gripping component. One secondary gripping component is connected to one sliding groove 21. Both the main gripping component and the secondary gripping component are connected to the vacuum pump.
[0086] The main gripping component includes a fixed platform 201, a first support rod, and a first adsorption component 202. The fixed platform 201 is fixedly connected to the upper surface of the machine base 1 by welding. A plurality of sliding grooves 21 are arranged around the outer side of the fixed platform 201. A plurality of the first support rods are fixedly connected to the upper surface of the fixed platform 201. A first adsorption component 202 is installed on each of the first support rods. The first adsorption components 202 are all connected to the vacuum pump.
[0087] The auxiliary gripping component includes a first linear drive 203, a slider 204, a second support rod, and a second adsorption component 205. The first linear drive 203 is installed on one side of the slide groove 21, and the slider 204 is slidably connected to the other side of the slide groove 21. The first linear drive 203 and the slider 204 are linearly driven connected. A plurality of second support rods are fixedly connected to the upper surface of the slider 204. The second adsorption component 205 is installed on each of the second support rods, and the second adsorption component 205 is connected to the vacuum pump.
[0088] The first linear drive component 203 is an electric cylinder;
[0089] The first adsorption element 202 and the second adsorption element 205 have the same structure, and both the first adsorption element 202 and the second adsorption element 205 are suction cups;
[0090] The moving mechanism includes a first track 10, a moving component 8, a first rotation drive component, a moving platform 3, and a second track 4. The two sides of the platform 1 are respectively detachably connected to a first track 10 by bolts. The lower part of the moving component 8 is slidably connected to a first track 10. The first rotation drive component is installed inside the moving component 8. The first track 10 is provided with a first tooth groove. The first rotation drive component is driven by a first gear. The first gear meshes with the first track 10 through the first tooth groove. The upper part of the moving component 8 is detachably connected to the lower surface of the moving platform 3 by bolts. The upper surface of the moving platform 3 is detachably connected to the second track 4 by bolts. The first moving box 7, the second moving box 5, and the third moving box 6 are all slidably connected to the second track 4.
[0091] The first rotation drive component is a servo motor;
[0092] The first movable box 7, the second movable box 5, and the third movable box 6 have the same structure;
[0093] The first movable box 7 includes a box body, a second rotation drive component, and a second gear. One side of the first movable box 7 is slidably connected to the second track 4. The second rotation drive component is disposed inside the box body and is drivenly connected to the second gear. The second track 4 is provided with a second tooth groove adapted to the second gear, and the second gear meshes with the second tooth groove. The first lifting assembly 12 is installed on the other side of the box body by bolts.
[0094] The second rotation drive component is a servo motor;
[0095] The first lifting assembly 12, the second lifting assembly 17, and the third lifting assembly 18 have the same structure;
[0096] The first lifting assembly 12 includes a mounting back plate 1202, a second linear drive 1201, and a slide 1203. One side of the mounting back plate 1202 is detachably connected to the other side of the box body by bolts, and the other side of the mounting back plate 1202 is slidably connected to one side of the slide 1203. The upper part of the second linear drive 1201 is detachably connected to the box body, and the lower part of the second linear drive 1201 is linearly driven connected to the slide 1203. The other side of the slide 1203 is detachably connected to the collection box 13 by bolts.
[0097] The second linear drive component 1201 is an electric cylinder;
[0098] It also includes a third track 11, on which the side of the moving platform 3 near the mounting back plate 1202 is detachably connected by bolts, and the third track 11 is slidably connected to one side of the mounting back plate 1202;
[0099] It also includes a PLC controller, which is electrically connected to the gripping and separating mechanism 2, the moving mechanism, the cutting component, the splitting component and the processing component respectively;
[0100] The PLC controller is model DATA-7311. The PLC controller is electrically connected to the exhaust component 20, the grinding drive component 22, the oil pump, the igniter, the water pump, the vacuum pump, the first linear drive component 203, the first rotary drive component, the second rotary drive component, and the second linear drive component 1201.
[0101] It also includes a support leg 9, which is detachably connected to the lower surface of the machine base 1 by bolts.
[0102] The above description shows and illustrates the basic principles, main features, and advantages of the present invention. Standard parts used in the present invention can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts, and equipment adopt conventional models in the prior art, and the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here.
[0103] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent modifications made based on the content of the present invention specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of the present invention.
Claims
1. A glass cutting device for touch screen processing, characterized in that: The device includes a machine base, a gripping and separating mechanism, a moving mechanism, a cutting component, a splitting component, and a processing component. At least one of the gripping and separating mechanisms is provided on the upper surface of the machine base. The lower part of the moving mechanism is connected to the machine base. The cutting component, the splitting component, and the processing component are all mounted on the upper part of the moving mechanism. The processing component includes a first movable box, a first lifting component, a collection box, a grinding component, and an exhaust component. One side of the first movable box is connected to the moving mechanism, and the other side of the first movable box is provided with the first lifting component. The first lifting component is linearly driven connected to the collection box. The grinding component is provided at the lower part of the collection box, and the exhaust port is provided at the upper part of the collection box. The exhaust component is connected to the exhaust port. The splitting assembly includes a third movable box, a third lifting assembly, a fire-spraying assembly, and a water-spraying assembly; The polishing assembly includes a polishing component, a "V"-shaped polishing groove is provided in the middle of the polishing component, a polishing layer is provided on the outer surface of the polishing groove, and a plurality of collection holes are provided in the polishing groove. The gripping and separating mechanism includes a vacuum pump, a main gripping assembly, and a secondary gripping assembly. The main gripping assembly is connected to the machine platform, and the machine platform is provided with a plurality of sliding grooves. The sliding grooves are arranged around the outside of the main gripping assembly. One secondary gripping assembly is connected to one of the sliding grooves. Both the main gripping assembly and the secondary gripping assembly are connected to the vacuum pump. The main gripping component includes a fixed platform, a first support rod, and a first adsorption component. The fixed platform is fixedly connected to the upper surface of the machine platform. A plurality of sliding grooves are arranged around the outer side of the fixed platform. A plurality of the first support rods are fixedly connected to the upper surface of the fixed platform. A first adsorption component is installed on each of the first support rods. All the first adsorption components are connected to the vacuum pump. The secondary gripping component includes a first linear drive, a slider, a second support rod, and a second suction member. The first linear drive is installed on one side of the slide groove, and the slider is slidably connected to the other side of the slide groove. The first linear drive is linearly driven to the slider. Several second support rods are fixedly connected to the upper surface of the slider. Each second support rod is equipped with a second suction member, and each second suction member is connected to the vacuum pump.
2. The glass cutting device for touch screen processing as described in claim 1, characterized in that: The polishing assembly includes a polishing drive, a rotating tube, a polishing component, and a transmission belt. A rotating tube is rotatably connected to each of the two sides of the lower part of the collection box. The rotating tube communicates with the interior of the collection box. The upper part of one rotating tube is connected to the upper part of the other rotating tube via the transmission belt. The polishing drive is driven by the transmission belt. A polishing component is fixedly connected to the lower part of each rotating tube. The polishing component has a cavity inside, which communicates with the collection box via the rotating tube. The collection hole communicates with the cavity.
3. The glass cutting device for touch screen processing as described in claim 1, characterized in that: The cutting assembly includes a second movable box, a second lifting assembly, a fixed plate, and a cutting head. One side of the second movable box is connected to the moving mechanism, and the other side of the second movable box is provided with the second lifting assembly. The second lifting assembly is linearly driven connected to the fixed plate, and the cutting head is detachably connected to the lower part of the fixed plate.
4. The glass cutting device for touch screen processing as described in claim 3, characterized in that: One side of the third movable box is connected to the movable mechanism, and the other side of the third movable box is provided with the third lifting assembly. The fire-spraying assembly and the water-spraying assembly are both installed on the third lifting assembly.
5. The glass cutting device for touch screen processing as described in claim 4, characterized in that: The flame-throwing assembly includes an oil tank, an oil pump, an oil nozzle, and an igniter. The oil tank is connected to the third lifting assembly. The oil nozzle is located at the bottom of the oil tank. The oil pump is located inside the oil tank and is connected to the oil nozzle. The igniter is located on the oil nozzle.
6. The glass cutting apparatus for touch screen processing as described in claim 4, characterized in that: The water spray assembly includes a water tank, a water pump, and a nozzle. The water tank is connected to the third lifting assembly, and the nozzle is located at the bottom of the water tank. The water pump is located inside the water tank and is connected to the nozzle.
7. The glass cutting apparatus for touch screen processing as described in claim 4, characterized in that: The moving mechanism includes a first track, a moving component, a first rotation drive component, a moving platform, and a second track. The first track is detachably connected to both sides of the platform. The lower part of the moving component is slidably connected to a first track. The first rotation drive component is installed inside the moving component. A first toothed groove is provided on the first track. A first gear is driven and connected to each of the first rotation drive components. A first gear meshes with a first track through the first toothed groove. The upper part of each moving component is detachably connected to the lower surface of the moving platform. The upper surface of the moving platform is detachably connected to the second track. The first moving box, the second moving box, and the third moving box are all slidably connected to the second track.
Citation Information
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